论文标题
使用非线性耦合器打破耗时Kerr Soliton的效率限制
Break the efficiency limitations of dissipative Kerr soliton using nonlinear couplers
论文作者
论文摘要
耗散的Kerr Soliton(DKS)提供了一个相干梳子来源的紧凑型解决方案,并具有巨大的应用潜力,但长期以来,通过连续波激光驾驶时的功率转换效率一直很差。在这里,提供了解决此挑战的一般方法。通过在广义理论框架中得出多模非光学系统的临界耦合条件,揭示了传统的DKS方法的两个效率限制:有效的耦合速率太小,也太小,并且也依赖于功率。提出了非线性耦合器通过非线性能量转换过程间接维持DK,从而实现了对DKS的功率自适应有效耦合率,并匹配了系统的总耗散率,这有望近乎统一功率转换效率。例如,预测使用第二谐波生成的非线性耦合器的氮化铝微孔预测,转换效率超过$ 90 \:\%$。高效生成DK的非线性耦合方法在实验上是可行的,因为它的机制适用于包括拉曼和布里鲁因散射在内的各种非线性过程,因此将微溶解剂铺平在实用应用中。
Dissipative Kerr soliton (DKS) offers a compact solution of coherent comb sources and holds huge potential for applications, but has long been suffering from poor power conversion efficiency when driving by a continuous-wave laser. Here, a general approach to resolving this challenge is provided. By deriving the critical coupling condition of a multimode nonlinear optics system in a generalized theoretical framework, two efficiency limitations of the conventional pump method of DKS are revealed: the effective coupling rate is too small and is also power-dependent. Nonlinear couplers are proposed to sustain the DKS indirectly through nonlinear energy conversion processes, realizing a power-adaptive effective coupling rate to the DKS and matching the total dissipation rate of the system, which promises near-unity power conversion efficiencies. For instance, a conversion efficiency exceeding $90\:\%$ is predicted for aluminum nitride microrings with a nonlinear coupler utilizing second-harmonic generation. The nonlinear coupler approach for high-efficiency generation of DKS is experimentally feasible as its mechanism applies to various nonlinear processes, including Raman and Brillouin scattering, and thus paves the way of micro-solitons towards practical applications.